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An output feedback-based start-up technique with automatic disabling for battery-less energy harvesters

机译:基于输出反馈的启动技术,可自动禁用无电池能量收集器

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This paper presents a start-up circuit based upon output voltage feedback for thermal energy harvesting. The feedback loop consisting of an output load, a boost converter core, a charge-pump-based doubler and a CMOS inverter switch to track the output voltage and generate a reset signal to kickstart the boost converter. The proposed start-up circuit shows a remarkably improved start-up time of 35μs at the input voltage of 290mV. The start-up circuit is automatically disabled after the boost converter reaches steady-state. Only one off-chip component is required, improving the cost efficiency. The proposed start-up circuit consumes 3.2nW during the steady state, aiding the boost converter to achieve an efficiency of 77% at input voltage of 290mV. It was designed in standard 65-nm CMOS process technology and occupies the area of 0.072mm.
机译:本文提出了一种基于输出电压反馈的启动电路,用于热能收集。反馈回路由输出负载,升压转换器内核,基于电荷泵的倍频器和CMOS反相器开关组成,以跟踪输出电压并生成复位信号以启动升压转换器。所建议的启动电路在290mV的输入电压下显示了35μs的显着改善的启动时间。升压转换器达到稳态后,启动电路将自动禁用。仅需要一个片外组件,从而提高了成本效率。所提出的启动电路在稳态期间的功耗为3.2nW,这有助于升压转换器在290mV的输入电压下实现77%的效率。它采用标准的65纳米CMOS工艺技术设计,占地0.072毫米。

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